odhcp6c_clear_state(STATE_NTP_FQDN);
odhcp6c_clear_state(STATE_SIP_IP);
odhcp6c_clear_state(STATE_SIP_FQDN);
- dhcpv6_set_ia_mode(ia_na_mode, ia_pd_mode);
bound = false;
syslog(LOG_NOTICE, "(re)starting transaction on %s", ifname);
signal_usr1 = signal_usr2 = false;
- int mode = dhcpv6_request(DHCPV6_MSG_SOLICIT);
+ int mode = dhcpv6_set_ia_mode(ia_na_mode, ia_pd_mode);
+ if (mode != DHCPV6_STATELESS)
+ mode = dhcpv6_request(DHCPV6_MSG_SOLICIT);
odhcp6c_signal_process();
if (mode < 0)
" -a Don't send Accept Reconfigure option\n"
" -f Don't send Client FQDN option\n"
" -k Don't send a RELEASE when stopping\n"
- " -t <seconds> Maximum timeout for DHCPv6-SOLICIT (3600)\n"
+ " -t <seconds> Maximum timeout for DHCPv6-SOLICIT (120)\n"
" -m <seconds> Minimum time between accepting updates (30)\n"
"\nInvocation options:\n"
" -p <pidfile> Set pidfile (/var/run/odhcp6c.pid)\n"
" -e Write logmessages to stderr\n"
" -v Increase logging verbosity\n"
" -h Show this help\n\n";
- write(STDERR_FILENO, buf, sizeof(buf));
+ fputs(buf, stderr);
return 1;
}
}
-struct odhcp6c_entry* odhcp6c_find_entry(enum odhcp6c_state state, const struct odhcp6c_entry *new)
+static struct odhcp6c_entry* odhcp6c_find_entry(enum odhcp6c_state state, const struct odhcp6c_entry *new)
{
- size_t len, cmplen = offsetof(struct odhcp6c_entry, target) + new->length / 8;
- struct odhcp6c_entry *start = odhcp6c_get_state(state, &len);
- struct odhcp6c_entry *x = NULL;
+ size_t len, cmplen = offsetof(struct odhcp6c_entry, target) + ((new->length + 7) / 8);
+ uint8_t *start = odhcp6c_get_state(state, &len);
- for (struct odhcp6c_entry *c = start; !x && c < &start[len/sizeof(*c)]; ++c)
- if (!memcmp(c, new, cmplen))
+ for (struct odhcp6c_entry *c = (struct odhcp6c_entry*)start;
+ (uint8_t*)c < &start[len] && &c->auxtarget[c->auxlen] <= &start[len];
+ c = (struct odhcp6c_entry*)(&c->auxtarget[c->auxlen]))
+ if (!memcmp(c, new, cmplen) && !memcmp(c->auxtarget, new->auxtarget, new->auxlen))
return c;
return NULL;
{
size_t len;
struct odhcp6c_entry *x = odhcp6c_find_entry(state, new);
- struct odhcp6c_entry *start = odhcp6c_get_state(state, &len);
+ uint8_t *start = odhcp6c_get_state(state, &len);
if (x && x->valid > new->valid && new->valid < safe)
new->valid = safe;
new->valid - x->valid < min_update_interval &&
new->preferred >= x->preferred &&
new->preferred != UINT32_MAX &&
- new->preferred - x->preferred < min_update_interval &&
- x->class == new->class)
+ new->preferred - x->preferred < min_update_interval)
return false;
x->valid = new->valid;
x->preferred = new->preferred;
x->t1 = new->t1;
x->t2 = new->t2;
- x->class = new->class;
x->iaid = new->iaid;
} else {
- odhcp6c_add_state(state, new, sizeof(*new));
+ odhcp6c_add_state(state, new, sizeof(*new) + new->auxlen);
}
} else if (x) {
- odhcp6c_remove_state(state, (x - start) * sizeof(*x), sizeof(*x));
+ odhcp6c_remove_state(state, ((uint8_t*)x) - start, sizeof(*x) + x->auxlen);
}
return true;
}
static void odhcp6c_expire_list(enum odhcp6c_state state, uint32_t elapsed)
{
size_t len;
- struct odhcp6c_entry *start = odhcp6c_get_state(state, &len);
- for (struct odhcp6c_entry *c = start; c < &start[len / sizeof(*c)]; ++c) {
+ uint8_t *start = odhcp6c_get_state(state, &len);
+ for (struct odhcp6c_entry *c = (struct odhcp6c_entry*)start;
+ (uint8_t*)c < &start[len] && &c->auxtarget[c->auxlen] <= &start[len];
+ c = (struct odhcp6c_entry*)(&c->auxtarget[c->auxlen])) {
if (c->t1 < elapsed)
c->t1 = 0;
else if (c->t1 != UINT32_MAX)
c->valid -= elapsed;
if (!c->valid)
- odhcp6c_remove_state(state, (c - start) * sizeof(*c), sizeof(*c));
+ odhcp6c_remove_state(state, ((uint8_t*)c) - start, sizeof(*c) + c->auxlen);
}
}
odhcp6c_expire_list(STATE_RA_PREFIX, elapsed);
odhcp6c_expire_list(STATE_RA_ROUTE, elapsed);
odhcp6c_expire_list(STATE_RA_DNS, elapsed);
+ odhcp6c_expire_list(STATE_RA_SEARCH, elapsed);
odhcp6c_expire_list(STATE_IA_NA, elapsed);
odhcp6c_expire_list(STATE_IA_PD, elapsed);
}
}
-void odhcp6c_random(void *buf, size_t len)
+int odhcp6c_random(void *buf, size_t len)
{
- read(urandom_fd, buf, len);
+ return read(urandom_fd, buf, len);
}
bool odhcp6c_is_bound(void)